[Influence of temperature on shear induced platelet aggregation in vitro (author's transl)]. 1977

H Rieger, and L Wurzinger, and H Schmid-Schöbein

The extent of platelet aggregation (PA) in vitro was investigated in relation to the temperature. The measurements were performed with a newly developed device in which PA is induced by a well-defined viscometric flow without addition of specific aggregation promoting agents. It was found that the PA occurs in two phases as related to temperature: at 4 degrees C and 37 degrees C there is none and a minimal PA respectively, whereas at room temperature strong PA takes place. It is proposed that these results indicate that both physicochemical mechanisms and the availability of metabolic energy linked with activation of contractile processes are prerequisites for platelet aggregation. The clinical aspects are discussed.

UI MeSH Term Description Entries
D008722 Methods A series of steps taken in order to conduct research. Techniques,Methodological Studies,Methodological Study,Procedures,Studies, Methodological,Study, Methodological,Method,Procedure,Technique
D010974 Platelet Aggregation The attachment of PLATELETS to one another. This clumping together can be induced by a number of agents (e.g., THROMBIN; COLLAGEN) and is part of the mechanism leading to the formation of a THROMBUS. Aggregation, Platelet
D011554 Pseudopodia A dynamic actin-rich extension of the surface of an animal cell used for locomotion or prehension of food. Axopodia,Filopodia,Lamellipodia,Lobopodia,Microspikes, Cell Surface,Reticulopodia,Pseudopodium,Cell Surface Microspike,Cell Surface Microspikes,Lamellipodias,Microspike, Cell Surface,Surface Microspike, Cell,Surface Microspikes, Cell
D001792 Blood Platelets Non-nucleated disk-shaped cells formed in the megakaryocyte and found in the blood of all mammals. They are mainly involved in blood coagulation. Platelets,Thrombocytes,Blood Platelet,Platelet,Platelet, Blood,Platelets, Blood,Thrombocyte
D001793 Blood Preservation The process by which blood or its components are kept viable outside of the organism from which they are derived (i.e., kept from decay by means of a chemical agent, cooling, or a fluid substitute that mimics the natural state within the organism). Blood Preservations,Preservation, Blood,Preservations, Blood
D001798 Blood Proteins Proteins that are present in blood serum, including SERUM ALBUMIN; BLOOD COAGULATION FACTORS; and many other types of proteins. Blood Protein,Plasma Protein,Plasma Proteins,Serum Protein,Serum Proteins,Protein, Blood,Protein, Plasma,Protein, Serum,Proteins, Blood,Proteins, Plasma,Proteins, Serum
D002118 Calcium A basic element found in nearly all tissues. It is a member of the alkaline earth family of metals with the atomic symbol Ca, atomic number 20, and atomic weight 40. Calcium is the most abundant mineral in the body and combines with phosphorus to form calcium phosphate in the bones and teeth. It is essential for the normal functioning of nerves and muscles and plays a role in blood coagulation (as factor IV) and in many enzymatic processes. Coagulation Factor IV,Factor IV,Blood Coagulation Factor IV,Calcium-40,Calcium 40,Factor IV, Coagulation
D004563 Electrochemistry The study of chemical changes resulting from electrical action and electrical activity resulting from chemical changes. Electrochemistries
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000251 Adenosine Triphosphatases A group of enzymes which catalyze the hydrolysis of ATP. The hydrolysis reaction is usually coupled with another function such as transporting Ca(2+) across a membrane. These enzymes may be dependent on Ca(2+), Mg(2+), anions, H+, or DNA. ATPases,Adenosinetriphosphatase,ATPase,ATPase, DNA-Dependent,Adenosine Triphosphatase,DNA-Dependent ATPase,DNA-Dependent Adenosinetriphosphatases,ATPase, DNA Dependent,Adenosinetriphosphatases, DNA-Dependent,DNA Dependent ATPase,DNA Dependent Adenosinetriphosphatases,Triphosphatase, Adenosine

Related Publications

H Rieger, and L Wurzinger, and H Schmid-Schöbein
July 1975, Arzneimittel-Forschung,
H Rieger, and L Wurzinger, and H Schmid-Schöbein
May 1981, Biomedizinische Technik. Biomedical engineering,
H Rieger, and L Wurzinger, and H Schmid-Schöbein
December 1973, [Rinsho ketsueki] The Japanese journal of clinical hematology,
H Rieger, and L Wurzinger, and H Schmid-Schöbein
August 2004, The Journal of trauma,
H Rieger, and L Wurzinger, and H Schmid-Schöbein
January 1978, Arzneimittel-Forschung,
H Rieger, and L Wurzinger, and H Schmid-Schöbein
March 1990, Lancet (London, England),
H Rieger, and L Wurzinger, and H Schmid-Schöbein
January 2001, Clinical hemorheology and microcirculation,
H Rieger, and L Wurzinger, and H Schmid-Schöbein
July 2013, Transfusion,
H Rieger, and L Wurzinger, and H Schmid-Schöbein
April 1978, Blut,
Copied contents to your clipboard!